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Composite catalyst layer, electrode and passive mixing flow field for compressionless fuel cells

机译:无压缩燃料电池的复合催化剂层,电极和被动混合流场

摘要

The application relates to improvements to the composition and architecture of compressionless fuel cells. The invention includes a hybrid or composite catalyst layer which includes a blend of catalyst particles, such as platinum on carbon, and fibers, such as graphite fibers. The invention also relates to a castable gas diffusion layer (GDL) which is both porous and electrically conductive. The GDL is formed from conductive metal flakes, such as gold and silver, carbon particles and binder to hold the flakes and particles together to form a porous foam microstructure. The invention further relates to a modified flow field for flowing fluid to or from the catalyst layer of a fuel cell. The flow field comprises at least one primary channel having a longitudinal axis and a plurality of secondary channels extending transversely from the primary channel at an angle relative to the longitudinal axis. The secondary channels induce the fluid flow path to rotate to thereby passively increase the probability of contact and mixing between the fluid and the catalyst layer. This in turn improves the delivery of reactants to the catalyst layer and the removal of reaction products from the catalyst layer. The catalyst layer, GDL and flow field may be synergistically combined to improve the efficiency and performance of compressionless micro fuel cells.
机译:本申请涉及对无压缩燃料电池的组成和构造的改进。本发明包括杂化或复合催化剂层,其包含催化剂颗粒例如碳上的铂和纤维例如石墨纤维的混合物。本发明还涉及多孔且导电的可浇铸气体扩散层(GDL)。 GDL由导电金属薄片(例如金和银),碳颗粒和粘合剂形成,以将薄片和颗粒固定在一起以形成多孔泡沫微结构。本发明还涉及用于使流体流入或流出燃料电池的催化剂层的改进的流场。该流场包括至少一个具有纵轴的主通道和多个相对于该纵轴以一定角度从该主通道横向延伸的副通道。辅助通道引起流体流动路径旋转,从而被动地增加了流体与催化剂层之间接触和混合的可能性。反过来,这改善了反应物向催化剂层的输送以及从催化剂层中除去反应产物的能力。催化剂层,GDL和流场可以协同地组合以提高无压缩微型燃料电池的效率和性能。

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